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不同热处理的热连轧GH4169合金组织及抗蠕变性能研究
引用本文:孔永华,刘瑞毅,王 飞,陈国胜,谢黎雄,朱世根.不同热处理的热连轧GH4169合金组织及抗蠕变性能研究[J].稀有金属材料与工程,2013,42(4):829-832.
作者姓名:孔永华  刘瑞毅  王 飞  陈国胜  谢黎雄  朱世根
作者单位:1. 东华大学,上海,201620
2. 宝钢集团特殊钢分公司,上海,200940
3. 贵州黎阳航空发动机公司,贵州平坝,561102
基金项目:上海市重大基础研究项目子课题
摘    要:研究了3种不同热处理工艺下热连轧GH4169合金的组织与抗蠕变性能。结果表明,3种不同的热处理工艺对晶粒大小有一定的影响,DA态热连轧GH4169合金的组织最细小,HST态合金晶粒尺寸比ST态合金晶粒尺寸略大;δ相的含量随固溶处理时间的增加而增加,且主要在晶界处析出。在650℃/725MPa的实验条件下,DA态热连轧GH4169合金的抗蠕变性能最好,HST态合金抗蠕变性能最差。对3种不同热处理工艺的热连轧GH4169合金蠕变断裂试样的断口进行观察,其断裂方式主要表现为沿晶断裂。

关 键 词:热连轧  GH4169合金  蠕变  沿晶断裂
收稿时间:2012/4/29 0:00:00

Effects of Different Heat Treatments on Microstructures and Creep Resistance of Hot Continuous Rolled GH4169 Alloy
Kong Yonghu,Liu Ruiyi,Wang Fei,Chen Guosheng,Xie Lixiong and Zhu Shigen.Effects of Different Heat Treatments on Microstructures and Creep Resistance of Hot Continuous Rolled GH4169 Alloy[J].Rare Metal Materials and Engineering,2013,42(4):829-832.
Authors:Kong Yonghu  Liu Ruiyi  Wang Fei  Chen Guosheng  Xie Lixiong and Zhu Shigen
Affiliation:1 (1. Donghua University, Shanghai 201620, China) (2. Special Steel Branch, Baosteel Group, Shanghai 200940, China) (3. Guizhou Liyang Aero Engine Corporation, Pingba 561102, China)
Abstract:The effects of three different heat treatments on microstructures and creep resistance of hot continuous rolled (HCR) GH4169 alloy were investigated. It is found that different heat treatments have an effect on grain size of HCR GH4169 alloy. The grain size of the sample after DA treatment is the smallest and that of the sample after HST treatment is the biggest. The content of d-phase increases with the increasing of the time of the solution heat treatment, and it mainly precipitates at the grain boundary. Under 650 °C/725 MPa experimental conditions, the HCR GH4169 after DA heat treatment has powerful creep resistance and long life time, while the HCR GH4169 after HST heat treatment has short life time. The fracture mode of creep specimens after heat treatments is intergranular fracture.
Keywords:hot continuous rolling (HCR)  GH4169 alloy  creep  intergranular fracture
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